mirror of
https://github.com/juanfont/headscale.git
synced 2024-11-29 18:33:05 +00:00
387aa03adb
This commit changes the internals of the mapper to track all the changes to peers over its lifetime. This means that it no longer depends on the database and this should hopefully help with locks and timing issues. When the mapper is created, it needs the current list of peers, the world view, when the polling session was started. Then as update changes are called, it tracks the changes and generates responses based on its internal list. As a side, the types.Machines and types.MachinesP, as well as types.Machine being passed as a full struct and pointer has been changed to always be pointers, everywhere. Signed-off-by: Kristoffer Dalby <kristoffer@tailscale.com>
605 lines
16 KiB
Go
605 lines
16 KiB
Go
package db
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import (
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"fmt"
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"net/netip"
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"regexp"
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"strconv"
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"testing"
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"time"
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"github.com/juanfont/headscale/hscontrol/policy"
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"github.com/juanfont/headscale/hscontrol/types"
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"github.com/juanfont/headscale/hscontrol/util"
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"gopkg.in/check.v1"
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"tailscale.com/types/key"
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)
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func (s *Suite) TestGetMachine(c *check.C) {
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user, err := db.CreateUser("test")
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c.Assert(err, check.IsNil)
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pak, err := db.CreatePreAuthKey(user.Name, false, false, nil, nil)
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c.Assert(err, check.IsNil)
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_, err = db.GetMachine("test", "testmachine")
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c.Assert(err, check.NotNil)
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machine := &types.Machine{
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ID: 0,
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MachineKey: "foo",
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NodeKey: "bar",
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DiscoKey: "faa",
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Hostname: "testmachine",
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UserID: user.ID,
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RegisterMethod: util.RegisterMethodAuthKey,
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AuthKeyID: uint(pak.ID),
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}
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db.db.Save(machine)
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_, err = db.GetMachine("test", "testmachine")
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c.Assert(err, check.IsNil)
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}
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func (s *Suite) TestGetMachineByID(c *check.C) {
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user, err := db.CreateUser("test")
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c.Assert(err, check.IsNil)
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pak, err := db.CreatePreAuthKey(user.Name, false, false, nil, nil)
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c.Assert(err, check.IsNil)
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_, err = db.GetMachineByID(0)
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c.Assert(err, check.NotNil)
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machine := types.Machine{
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ID: 0,
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MachineKey: "foo",
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NodeKey: "bar",
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DiscoKey: "faa",
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Hostname: "testmachine",
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UserID: user.ID,
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RegisterMethod: util.RegisterMethodAuthKey,
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AuthKeyID: uint(pak.ID),
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}
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db.db.Save(&machine)
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_, err = db.GetMachineByID(0)
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c.Assert(err, check.IsNil)
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}
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func (s *Suite) TestGetMachineByNodeKey(c *check.C) {
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user, err := db.CreateUser("test")
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c.Assert(err, check.IsNil)
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pak, err := db.CreatePreAuthKey(user.Name, false, false, nil, nil)
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c.Assert(err, check.IsNil)
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_, err = db.GetMachineByID(0)
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c.Assert(err, check.NotNil)
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nodeKey := key.NewNode()
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machineKey := key.NewMachine()
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machine := types.Machine{
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ID: 0,
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MachineKey: util.MachinePublicKeyStripPrefix(machineKey.Public()),
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NodeKey: util.NodePublicKeyStripPrefix(nodeKey.Public()),
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DiscoKey: "faa",
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Hostname: "testmachine",
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UserID: user.ID,
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RegisterMethod: util.RegisterMethodAuthKey,
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AuthKeyID: uint(pak.ID),
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}
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db.db.Save(&machine)
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_, err = db.GetMachineByNodeKey(nodeKey.Public())
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c.Assert(err, check.IsNil)
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}
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func (s *Suite) TestGetMachineByAnyNodeKey(c *check.C) {
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user, err := db.CreateUser("test")
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c.Assert(err, check.IsNil)
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pak, err := db.CreatePreAuthKey(user.Name, false, false, nil, nil)
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c.Assert(err, check.IsNil)
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_, err = db.GetMachineByID(0)
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c.Assert(err, check.NotNil)
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nodeKey := key.NewNode()
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oldNodeKey := key.NewNode()
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machineKey := key.NewMachine()
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machine := types.Machine{
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ID: 0,
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MachineKey: util.MachinePublicKeyStripPrefix(machineKey.Public()),
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NodeKey: util.NodePublicKeyStripPrefix(nodeKey.Public()),
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DiscoKey: "faa",
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Hostname: "testmachine",
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UserID: user.ID,
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RegisterMethod: util.RegisterMethodAuthKey,
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AuthKeyID: uint(pak.ID),
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}
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db.db.Save(&machine)
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_, err = db.GetMachineByAnyKey(machineKey.Public(), nodeKey.Public(), oldNodeKey.Public())
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c.Assert(err, check.IsNil)
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}
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func (s *Suite) TestHardDeleteMachine(c *check.C) {
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user, err := db.CreateUser("test")
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c.Assert(err, check.IsNil)
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machine := types.Machine{
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ID: 0,
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MachineKey: "foo",
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NodeKey: "bar",
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DiscoKey: "faa",
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Hostname: "testmachine3",
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UserID: user.ID,
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RegisterMethod: util.RegisterMethodAuthKey,
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AuthKeyID: uint(1),
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}
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db.db.Save(&machine)
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err = db.DeleteMachine(&machine)
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c.Assert(err, check.IsNil)
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_, err = db.GetMachine(user.Name, "testmachine3")
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c.Assert(err, check.NotNil)
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}
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func (s *Suite) TestListPeers(c *check.C) {
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user, err := db.CreateUser("test")
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c.Assert(err, check.IsNil)
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pak, err := db.CreatePreAuthKey(user.Name, false, false, nil, nil)
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c.Assert(err, check.IsNil)
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_, err = db.GetMachineByID(0)
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c.Assert(err, check.NotNil)
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for index := 0; index <= 10; index++ {
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machine := types.Machine{
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ID: uint64(index),
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MachineKey: "foo" + strconv.Itoa(index),
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NodeKey: "bar" + strconv.Itoa(index),
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DiscoKey: "faa" + strconv.Itoa(index),
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Hostname: "testmachine" + strconv.Itoa(index),
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UserID: user.ID,
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RegisterMethod: util.RegisterMethodAuthKey,
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AuthKeyID: uint(pak.ID),
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}
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db.db.Save(&machine)
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}
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machine0ByID, err := db.GetMachineByID(0)
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c.Assert(err, check.IsNil)
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peersOfMachine0, err := db.ListPeers(machine0ByID)
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c.Assert(err, check.IsNil)
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c.Assert(len(peersOfMachine0), check.Equals, 9)
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c.Assert(peersOfMachine0[0].Hostname, check.Equals, "testmachine2")
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c.Assert(peersOfMachine0[5].Hostname, check.Equals, "testmachine7")
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c.Assert(peersOfMachine0[8].Hostname, check.Equals, "testmachine10")
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}
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func (s *Suite) TestGetACLFilteredPeers(c *check.C) {
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type base struct {
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user *types.User
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key *types.PreAuthKey
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}
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stor := make([]base, 0)
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for _, name := range []string{"test", "admin"} {
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user, err := db.CreateUser(name)
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c.Assert(err, check.IsNil)
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pak, err := db.CreatePreAuthKey(user.Name, false, false, nil, nil)
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c.Assert(err, check.IsNil)
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stor = append(stor, base{user, pak})
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}
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_, err := db.GetMachineByID(0)
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c.Assert(err, check.NotNil)
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for index := 0; index <= 10; index++ {
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machine := types.Machine{
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ID: uint64(index),
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MachineKey: "foo" + strconv.Itoa(index),
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NodeKey: "bar" + strconv.Itoa(index),
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DiscoKey: "faa" + strconv.Itoa(index),
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IPAddresses: types.MachineAddresses{
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netip.MustParseAddr(fmt.Sprintf("100.64.0.%v", strconv.Itoa(index+1))),
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},
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Hostname: "testmachine" + strconv.Itoa(index),
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UserID: stor[index%2].user.ID,
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RegisterMethod: util.RegisterMethodAuthKey,
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AuthKeyID: uint(stor[index%2].key.ID),
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}
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db.db.Save(&machine)
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}
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aclPolicy := &policy.ACLPolicy{
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Groups: map[string][]string{
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"group:test": {"admin"},
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},
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Hosts: map[string]netip.Prefix{},
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TagOwners: map[string][]string{},
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ACLs: []policy.ACL{
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{
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Action: "accept",
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Sources: []string{"admin"},
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Destinations: []string{"*:*"},
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},
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{
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Action: "accept",
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Sources: []string{"test"},
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Destinations: []string{"test:*"},
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},
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},
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Tests: []policy.ACLTest{},
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}
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adminMachine, err := db.GetMachineByID(1)
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c.Logf("Machine(%v), user: %v", adminMachine.Hostname, adminMachine.User)
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c.Assert(err, check.IsNil)
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testMachine, err := db.GetMachineByID(2)
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c.Logf("Machine(%v), user: %v", testMachine.Hostname, testMachine.User)
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c.Assert(err, check.IsNil)
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adminPeers, err := db.ListPeers(adminMachine)
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c.Assert(err, check.IsNil)
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testPeers, err := db.ListPeers(testMachine)
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c.Assert(err, check.IsNil)
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adminRules, _, err := policy.GenerateFilterAndSSHRules(aclPolicy, adminMachine, adminPeers)
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c.Assert(err, check.IsNil)
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testRules, _, err := policy.GenerateFilterAndSSHRules(aclPolicy, testMachine, testPeers)
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c.Assert(err, check.IsNil)
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peersOfAdminMachine := policy.FilterMachinesByACL(adminMachine, adminPeers, adminRules)
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peersOfTestMachine := policy.FilterMachinesByACL(testMachine, testPeers, testRules)
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c.Log(peersOfTestMachine)
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c.Assert(len(peersOfTestMachine), check.Equals, 9)
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c.Assert(peersOfTestMachine[0].Hostname, check.Equals, "testmachine1")
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c.Assert(peersOfTestMachine[1].Hostname, check.Equals, "testmachine3")
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c.Assert(peersOfTestMachine[3].Hostname, check.Equals, "testmachine5")
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c.Log(peersOfAdminMachine)
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c.Assert(len(peersOfAdminMachine), check.Equals, 9)
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c.Assert(peersOfAdminMachine[0].Hostname, check.Equals, "testmachine2")
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c.Assert(peersOfAdminMachine[2].Hostname, check.Equals, "testmachine4")
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c.Assert(peersOfAdminMachine[5].Hostname, check.Equals, "testmachine7")
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}
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func (s *Suite) TestExpireMachine(c *check.C) {
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user, err := db.CreateUser("test")
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c.Assert(err, check.IsNil)
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pak, err := db.CreatePreAuthKey(user.Name, false, false, nil, nil)
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c.Assert(err, check.IsNil)
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_, err = db.GetMachine("test", "testmachine")
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c.Assert(err, check.NotNil)
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machine := &types.Machine{
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ID: 0,
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MachineKey: "foo",
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NodeKey: "bar",
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DiscoKey: "faa",
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Hostname: "testmachine",
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UserID: user.ID,
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RegisterMethod: util.RegisterMethodAuthKey,
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AuthKeyID: uint(pak.ID),
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Expiry: &time.Time{},
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}
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db.db.Save(machine)
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machineFromDB, err := db.GetMachine("test", "testmachine")
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c.Assert(err, check.IsNil)
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c.Assert(machineFromDB, check.NotNil)
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c.Assert(machineFromDB.IsExpired(), check.Equals, false)
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now := time.Now()
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err = db.MachineSetExpiry(machineFromDB, now)
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c.Assert(err, check.IsNil)
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c.Assert(machineFromDB.IsExpired(), check.Equals, true)
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}
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func (s *Suite) TestSerdeAddressStrignSlice(c *check.C) {
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input := types.MachineAddresses([]netip.Addr{
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netip.MustParseAddr("192.0.2.1"),
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netip.MustParseAddr("2001:db8::1"),
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})
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serialized, err := input.Value()
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c.Assert(err, check.IsNil)
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if serial, ok := serialized.(string); ok {
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c.Assert(serial, check.Equals, "192.0.2.1,2001:db8::1")
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}
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var deserialized types.MachineAddresses
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err = deserialized.Scan(serialized)
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c.Assert(err, check.IsNil)
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c.Assert(len(deserialized), check.Equals, len(input))
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for i := range deserialized {
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c.Assert(deserialized[i], check.Equals, input[i])
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}
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}
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func (s *Suite) TestGenerateGivenName(c *check.C) {
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user1, err := db.CreateUser("user-1")
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c.Assert(err, check.IsNil)
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pak, err := db.CreatePreAuthKey(user1.Name, false, false, nil, nil)
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c.Assert(err, check.IsNil)
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_, err = db.GetMachine("user-1", "testmachine")
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c.Assert(err, check.NotNil)
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machine := &types.Machine{
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ID: 0,
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MachineKey: "machine-key-1",
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NodeKey: "node-key-1",
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DiscoKey: "disco-key-1",
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Hostname: "hostname-1",
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GivenName: "hostname-1",
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UserID: user1.ID,
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RegisterMethod: util.RegisterMethodAuthKey,
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AuthKeyID: uint(pak.ID),
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}
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db.db.Save(machine)
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givenName, err := db.GenerateGivenName("machine-key-2", "hostname-2")
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comment := check.Commentf("Same user, unique machines, unique hostnames, no conflict")
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c.Assert(err, check.IsNil, comment)
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c.Assert(givenName, check.Equals, "hostname-2", comment)
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givenName, err = db.GenerateGivenName("machine-key-1", "hostname-1")
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comment = check.Commentf("Same user, same machine, same hostname, no conflict")
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c.Assert(err, check.IsNil, comment)
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c.Assert(givenName, check.Equals, "hostname-1", comment)
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givenName, err = db.GenerateGivenName("machine-key-2", "hostname-1")
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comment = check.Commentf("Same user, unique machines, same hostname, conflict")
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c.Assert(err, check.IsNil, comment)
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c.Assert(givenName, check.Matches, fmt.Sprintf("^hostname-1-[a-z0-9]{%d}$", MachineGivenNameHashLength), comment)
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givenName, err = db.GenerateGivenName("machine-key-2", "hostname-1")
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comment = check.Commentf("Unique users, unique machines, same hostname, conflict")
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c.Assert(err, check.IsNil, comment)
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c.Assert(givenName, check.Matches, fmt.Sprintf("^hostname-1-[a-z0-9]{%d}$", MachineGivenNameHashLength), comment)
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}
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func (s *Suite) TestSetTags(c *check.C) {
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user, err := db.CreateUser("test")
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c.Assert(err, check.IsNil)
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pak, err := db.CreatePreAuthKey(user.Name, false, false, nil, nil)
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c.Assert(err, check.IsNil)
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_, err = db.GetMachine("test", "testmachine")
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c.Assert(err, check.NotNil)
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machine := &types.Machine{
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ID: 0,
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MachineKey: "foo",
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NodeKey: "bar",
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DiscoKey: "faa",
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Hostname: "testmachine",
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UserID: user.ID,
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RegisterMethod: util.RegisterMethodAuthKey,
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AuthKeyID: uint(pak.ID),
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}
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db.db.Save(machine)
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// assign simple tags
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sTags := []string{"tag:test", "tag:foo"}
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err = db.SetTags(machine, sTags)
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c.Assert(err, check.IsNil)
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machine, err = db.GetMachine("test", "testmachine")
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c.Assert(err, check.IsNil)
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c.Assert(machine.ForcedTags, check.DeepEquals, types.StringList(sTags))
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// assign duplicat tags, expect no errors but no doubles in DB
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eTags := []string{"tag:bar", "tag:test", "tag:unknown", "tag:test"}
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err = db.SetTags(machine, eTags)
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c.Assert(err, check.IsNil)
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machine, err = db.GetMachine("test", "testmachine")
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c.Assert(err, check.IsNil)
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c.Assert(
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machine.ForcedTags,
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check.DeepEquals,
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types.StringList([]string{"tag:bar", "tag:test", "tag:unknown"}),
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)
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}
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func TestHeadscale_generateGivenName(t *testing.T) {
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type args struct {
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suppliedName string
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randomSuffix bool
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}
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tests := []struct {
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name string
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args args
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want *regexp.Regexp
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wantErr bool
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}{
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{
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name: "simple machine name generation",
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args: args{
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suppliedName: "testmachine",
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randomSuffix: false,
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},
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want: regexp.MustCompile("^testmachine$"),
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wantErr: false,
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},
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{
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name: "machine name with 53 chars",
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args: args{
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suppliedName: "testmaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaachine",
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randomSuffix: false,
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},
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want: regexp.MustCompile("^testmaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaachine$"),
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wantErr: false,
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},
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{
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name: "machine name with 63 chars",
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args: args{
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suppliedName: "machineeee12345678901234567890123456789012345678901234567890123",
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randomSuffix: false,
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},
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want: regexp.MustCompile("^machineeee12345678901234567890123456789012345678901234567890123$"),
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wantErr: false,
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},
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{
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name: "machine name with 64 chars",
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args: args{
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suppliedName: "machineeee123456789012345678901234567890123456789012345678901234",
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randomSuffix: false,
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},
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want: nil,
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wantErr: true,
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},
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{
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name: "machine name with 73 chars",
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args: args{
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suppliedName: "machineeee123456789012345678901234567890123456789012345678901234567890123",
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randomSuffix: false,
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},
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want: nil,
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wantErr: true,
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},
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{
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name: "machine name with random suffix",
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args: args{
|
|
suppliedName: "test",
|
|
randomSuffix: true,
|
|
},
|
|
want: regexp.MustCompile(fmt.Sprintf("^test-[a-z0-9]{%d}$", MachineGivenNameHashLength)),
|
|
wantErr: false,
|
|
},
|
|
{
|
|
name: "machine name with 63 chars with random suffix",
|
|
args: args{
|
|
suppliedName: "machineeee12345678901234567890123456789012345678901234567890123",
|
|
randomSuffix: true,
|
|
},
|
|
want: regexp.MustCompile(fmt.Sprintf("^machineeee1234567890123456789012345678901234567890123-[a-z0-9]{%d}$", MachineGivenNameHashLength)),
|
|
wantErr: false,
|
|
},
|
|
}
|
|
for _, tt := range tests {
|
|
t.Run(tt.name, func(t *testing.T) {
|
|
got, err := generateGivenName(tt.args.suppliedName, tt.args.randomSuffix)
|
|
if (err != nil) != tt.wantErr {
|
|
t.Errorf(
|
|
"Headscale.GenerateGivenName() error = %v, wantErr %v",
|
|
err,
|
|
tt.wantErr,
|
|
)
|
|
|
|
return
|
|
}
|
|
|
|
if tt.want != nil && !tt.want.MatchString(got) {
|
|
t.Errorf(
|
|
"Headscale.GenerateGivenName() = %v, does not match %v",
|
|
tt.want,
|
|
got,
|
|
)
|
|
}
|
|
|
|
if len(got) > util.LabelHostnameLength {
|
|
t.Errorf(
|
|
"Headscale.GenerateGivenName() = %v is larger than allowed DNS segment %d",
|
|
got,
|
|
util.LabelHostnameLength,
|
|
)
|
|
}
|
|
})
|
|
}
|
|
}
|
|
|
|
func (s *Suite) TestAutoApproveRoutes(c *check.C) {
|
|
acl := []byte(`
|
|
{
|
|
"tagOwners": {
|
|
"tag:exit": ["test"],
|
|
},
|
|
|
|
"groups": {
|
|
"group:test": ["test"]
|
|
},
|
|
|
|
"acls": [
|
|
{"action": "accept", "users": ["*"], "ports": ["*:*"]},
|
|
],
|
|
|
|
"autoApprovers": {
|
|
"exitNode": ["tag:exit"],
|
|
"routes": {
|
|
"10.10.0.0/16": ["group:test"],
|
|
"10.11.0.0/16": ["test"],
|
|
}
|
|
}
|
|
}
|
|
`)
|
|
|
|
pol, err := policy.LoadACLPolicyFromBytes(acl, "hujson")
|
|
c.Assert(err, check.IsNil)
|
|
c.Assert(pol, check.NotNil)
|
|
|
|
user, err := db.CreateUser("test")
|
|
c.Assert(err, check.IsNil)
|
|
|
|
pak, err := db.CreatePreAuthKey(user.Name, false, false, nil, nil)
|
|
c.Assert(err, check.IsNil)
|
|
|
|
nodeKey := key.NewNode()
|
|
|
|
defaultRouteV4 := netip.MustParsePrefix("0.0.0.0/0")
|
|
defaultRouteV6 := netip.MustParsePrefix("::/0")
|
|
route1 := netip.MustParsePrefix("10.10.0.0/16")
|
|
// Check if a subprefix of an autoapproved route is approved
|
|
route2 := netip.MustParsePrefix("10.11.0.0/24")
|
|
|
|
machine := types.Machine{
|
|
ID: 0,
|
|
MachineKey: "foo",
|
|
NodeKey: util.NodePublicKeyStripPrefix(nodeKey.Public()),
|
|
DiscoKey: "faa",
|
|
Hostname: "test",
|
|
UserID: user.ID,
|
|
RegisterMethod: util.RegisterMethodAuthKey,
|
|
AuthKeyID: uint(pak.ID),
|
|
HostInfo: types.HostInfo{
|
|
RequestTags: []string{"tag:exit"},
|
|
RoutableIPs: []netip.Prefix{defaultRouteV4, defaultRouteV6, route1, route2},
|
|
},
|
|
IPAddresses: []netip.Addr{netip.MustParseAddr("100.64.0.1")},
|
|
}
|
|
|
|
db.db.Save(&machine)
|
|
|
|
err = db.SaveMachineRoutes(&machine)
|
|
c.Assert(err, check.IsNil)
|
|
|
|
machine0ByID, err := db.GetMachineByID(0)
|
|
c.Assert(err, check.IsNil)
|
|
|
|
err = db.EnableAutoApprovedRoutes(pol, machine0ByID)
|
|
c.Assert(err, check.IsNil)
|
|
|
|
enabledRoutes, err := db.GetEnabledRoutes(machine0ByID)
|
|
c.Assert(err, check.IsNil)
|
|
c.Assert(enabledRoutes, check.HasLen, 4)
|
|
}
|